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1.
氨氮废水的厌氧氨氧化生物脱氮研究   总被引:1,自引:0,他引:1  
利用从厌氧污泥中筛选和驯化的厌氧氨氧化(Anammox)菌直接启动UASB反应器,通过缩短水力停留时间(HRT)提高系统运行负荷,探讨水力停留时间对模拟废水脱氮性能的影响。结果表明,(1)富含Anammox菌的颗粒污泥能够快速启动反应器(只需14d)。(2)连续91d的HRT测试期间,系统具有良好的脱氮性能,且随着HRT的缩短,系统的脱氮效率具有波动上升的特点。NH4+-N、NO2--N和TN(总氮)的平均去除率超过70.0%。(3)系统总氮容积负荷(TNLR)和总氮去除负荷(TNRR)最大值(以N计)分别为2.04kg·m-3·d-1和1.56kg·m-3·d-1。(4)系统能够比较好的遵循Anammox生物脱氮的理论途径:NH4+-N、NO2--N的去除速率与NO3--N的生成速率的比例为1?1.15?0.22,与其相应理论值(1?1.32?0.26)非常接近。  相似文献   

2.
接种污泥源对厌氧氨氧化启动效能的影响   总被引:3,自引:0,他引:3  
厌氧氨氧化(anaerobic ammonium oxidation,ANAMMOX)菌生长缓慢是影响其实际应用的主要问题之一,选取合适的接种污泥十分重要.本研究采用好氧污泥、厌氧颗粒污泥和厌氧消化污泥3种接种污泥,分别经过61、70和85 d的运行均实现了厌氧氨氧化过程,氨氮去除率分别为82%、92%和91%,总氮去除率达76%、82%和80%.分别接种3种污泥源的厌氧序批式反应器(ASBR)R1、R2、1t3出水pH值最终稳定在8.4、8.5、8.5.好氧污泥呈絮状,但沉降性比接种前好,厌氧颗粒污泥解体后最终形成粒径集中在0.5~1.0 mm的污泥,厌氧消化污泥则呈沙化状态,有细小颗粒出现.根据厌氧氨氧化细胞产率系数及NH4+-N、NO2--N去除量和NO3--N生成量之间的计量学关系,估算出厌氧氨氧化菌产率系数(以1 mol NH4+产生的CH2O0.5N0.15量计)分别为0.080、0.105和0.114 mol·mol-1,说明反应器内厌氧氨氧化菌有不同程度的衰减.总体而言,厌氧颗粒污泥是富集厌氧氨氧化菌的最适污泥源.  相似文献   

3.
厌氧-好氧一体式折流板反应器处理淀粉废水的启动运行   总被引:1,自引:0,他引:1  
采用厌氧-好氧一体式折流板反应器,处理马铃薯淀粉废水,以淀粉废水排放口底泥作为接种污泥,可以实现快速启动。启动过程的结果表明:在温度为2 5℃~35℃,总水力停留时间(HRT)为5 4h ,容积负荷从0 .5kg/ (m3 ·d)逐渐升高到3.0 8kg/ (m3 ·d)时,第11d就将反应器启动成功,前3级厌氧反应器总的去除率达到75 % ,厌氧-好氧一体式折流板反应器总的去除率达到96 %。而后逐渐提高容积负荷,当容积负荷为10 .0kg/ (m3 ·d)时,COD去除率最高为96 % ,出水水质达到或接近国家污水排放二级标准(GB 8978- 96 )。  相似文献   

4.
微波碱解处理剩余污泥的厌氧消化性能   总被引:1,自引:0,他引:1  
为了研究微波碱解预处理(microwave/NaOH pretreatment,MNP)剩余污泥在高温和中温条件下厌氧消化的性能,采用半连续完全混合式反应器分别研究了MNP处理后的剩余污泥在高温厌氧消化工艺(thermophilic anaerobic di-gestion process,TADP)和中温厌氧消化工艺...  相似文献   

5.
采用常温(25℃)厌氧消化工艺,通过设计两种不同的进料浓度和4个处理方式,研究了油脂的去除对餐厨垃圾压滤液厌氧消化产沼气的影响,并考察了消化过程中典型工艺参数pH值、挥发性脂肪酸(VFA)、CODCr、总磷等的变化规律.试验结果表明油脂对餐厨垃圾压滤液厌氧消化的产气前期有一定的抑制作用,但是整体抑制不明显.处理T1(未隔油餐厨垃圾滤液800 mL)、T2(隔油餐厨垃圾滤液800 mL)、T3(未隔油餐厨垃圾滤液500 mL)、T4(隔油餐厨垃圾滤液500 mL)的产气总量分别为:84357、55539、45031和31033 mL,其中T1的产气总量是T2的1.52倍;T3的产气总量是T4的1.45倍,结果表明餐厨垃圾滤液不需要经过隔油处理而直接可以用于厌氧消化产沼气.同时,当压滤液低浓度(T3、T4)时,产气差异小;高浓度(T1、T2)时,产气差异大.此外,在整个厌氧消化过程中,处理T1、T2、T3和T4的CODCr总去除率分别为80.44%、78.53%、79.67%和80.7%.  相似文献   

6.
COD对颗粒污泥厌氧氨氧化反应性能的影响   总被引:8,自引:1,他引:8  
研究了COD对颗粒污泥厌氧氨氧化反应的影响,并对颗粒污泥的厌氧氨氧化脱氮性能进行了分析.厌氧颗粒污泥取自实验室长期运行的EGSB生物脱氮反应器,实验用水为人工配水,以葡萄糖为有机碳源;主要考察了COD对NH4 -N、NO2--N、NO3--N和TN去除的影响.结果表明:当进水不含COD时,反应器对NH4 -N、NO2--N和NO3--N和TN的去除率分别为12.5%、29.1%、16.1%和16.3%;当COD浓度分别为200mg/L、350mg/L和550mg/L时,反应器对NH4 -N的去除率分别为14.2%、14.2%和23.7%,对NO2--N的去除率均接近100%,对NO3--N的去除率分别为94.5%、86.6%和84.2%,对TN的去除率分别为50.7%、46.9%和50.4%,COD去除率分别为85%、66%和60%.分析发现,在反应初期,氨氮的去除主要通过厌氧氨氧化过程实现,随着反应的进行,反硝化菌活性逐渐提高,传统的反硝化过程占优势.同时还观察到,在反应初期COD对氨氮去除的抑制作用非常明显.图2参21  相似文献   

7.
沼气中的硫化氢(H2S)是一种具有腐蚀性的有毒气体,因此在使用前必须对沼气进行人工脱硫处理.以硝酸盐作为电子受体,设置两个反应器研究在不同沼气进气速率下微生物对H2S去除能力的影响,并分析厌氧污泥的菌群结构和关键微生物种群类型.结果表明在接种污泥的反应器A中,在低进气H2S负荷下,即沼气流速为0.5 L/min时,H2S的去除率在96%以上;在高进气H2S负荷下,即沼气流速为2 L/min、3 L/min和4 L/min时,H2S去除率在20%-35%之间.即随着沼气流速加快,气体停留时间缩短,H2S去除率逐渐下降.未接种污泥的反应器B前6 d H2S去除率逐渐升高,6 d后去除率逐渐下降.厌氧污泥中的微生物生化作用对H2S的去除率有显著影响.微生物群落结构分析结果表明,在反应器运行过程中污泥的微生物种类变化较小.厌氧污泥中微生物群落的优势门是变形菌门(Proteobacteria),优势属是硫杆菌属(Thiobacillus).Sulfurimonas在微生物群落中的相对丰度变化与H2S去除率的变化呈显著正相关.故Sulfurimonas可能是本反应系统中的主要脱氮脱硫菌.  相似文献   

8.
以热水解后高含固污泥及其脱水后固、液分离产物为对象进行厌氧消化试验,通过生物化学甲烷势(BMP)及脱水性能测定,研究其产气量、有机物分布、污泥脱水性能及生物质能转化特性,评估高含固污泥热水解-脱水-脱水液厌氧消化工艺的可行性.结果表明,经热水解预处理的高含固污泥进行厌氧消化后,其毛细吸收时间(CST)及脱水泥饼含水率由247.5±0.9 s和71.1%±1.3%上升至568.0±1.6 s和80.7%±1.0%,即厌氧消化会导致热水解后污泥脱水性能下降.污泥中74.0%的有机物在水热预处理之后被转移至液相,是厌氧消化所产沼气的主要来源.物质能量衡算结果表明,高含固污泥采用热水解-脱水-脱水液厌氧消化工艺可以有效地将消化装置容积大大减少;沼气燃烧所产能量实现该工艺能量自给自足.  相似文献   

9.
厌氧-好氧生物除磷影响因素的控制   总被引:2,自引:0,他引:2  
李捷  熊必永  张杰 《生态环境》2004,13(4):506-507,511
采用厌氧-好氧生物除磷工艺,研究了两个关键因子--化学需氧量与磷的比值和污泥负荷对系统除磷效果的影响及其控制.结果表明,原污水中化学需氧量与磷的比值越高,厌氧放磷越多,越有利于除磷;厌氧放磷与厌氧吸收碳源呈正相关;并且,进水化学需氧量与磷的比值的变化对整个系统碳源污染物的去除效果不会产生明显的影响.试验发现,厌氧条件下聚磷菌贮存碳源的多寡并不完全依赖于高能磷酸键水解提供的能量,原污水中化学需氧量越多,越有利于厌氧碳源的贮存.若要达到好的除磷效果,系统的污泥负荷必须控制在0.21~0.5 kg/(kg·d)之间,且污泥负荷越高,除磷效果越佳.  相似文献   

10.
考察了不同进水有机物浓度下厌氧/好氧序批式移动床生物膜反应器(SBMBBR)污染物去除特性,实验结果表明,SBMBBR能够实现低碳源污水中氮和磷的同步去除,在进水TN和TP浓度分别为116.7 mg.L-1和11.5 mg.L-1、COD浓度为456 mg.L-1的条件下,TN和TP去除率分别达到94.3%和92.2%以上.反应器除磷是基于常规生物除磷和反硝化除磷过程实现的,脱氮主要是基于好氧段发生的同时硝化反硝化(SND)作用而完成.由于生物膜内部存在的DO扩散梯度,在好氧阶段混合液DO浓度不断提高的条件下反应器内具有良好SND反应的发生.进水COD浓度由149 mg.L-1提高至456 mg.L-1的过程中,反应器硝化效果不变,反硝化和除磷效果改善.反应器在好氧阶段pH值基本维持在7.0—7.1之间,为各类菌群的生长创造了条件.碱度变化较pH值更能反映硝化和反硝化反应发生的程度.反应器中微生物相丰富,生物膜以丝状菌为骨架,其上附着大量的球状菌和杆状菌,而悬浮活性污泥中丝状菌较少,形成了由细菌、真菌到原生动物和后生动物的复杂的生态体系,为系统取得稳定的污水处理效果提供了有效的保证.  相似文献   

11.
The performance of a pilot plant operation combining thermal hydrolysis (170°C, 30 min) and anaerobic digestion (AD) was studied, determining the main properties for samples of fresh mixed sludge, hydrolyzed sludge, and digested sludge, in order to quantify the thermal pretreatment performance (disintegration, solubilisation, and dewaterability) and its impact on the anaerobic digestion performance (biodegradability, volatile solids reduction, and digester rheology) and end product characteristics (dewaterability, sanitation, organic and nitrogen content). The disintegration achieved during the thermal treatment enhances the sludge centrifugation, allowing a 70% higher total solids concentration in the feed to anaerobic digestion. The digestion of this sludge generates 40% more biogas in half the time, due to the higher solids removal compared to a conventional digester. The waste generated can be dewatered by centrifugation to 7% dry solids without polymer addition, and is pathogen free.  相似文献   

12.
添加蚓粪对玉米秸秆厌氧发酵产气特性的影响   总被引:1,自引:0,他引:1  
以玉米秸秆为原料,总固体(TS)含量为50g.kg-1,采用中温35℃批式发酵,考察了添加蚓粪对玉米秸秆厌氧发酵产气的影响。结果表明:玉米秸秆单独发酵时,单位TS产气量为333.3mL.g-1,甲烷产量为202.0mL.g-1,并在反应初期出现酸化现象;蚓粪与玉米秸秆TS质量比为1:1进行发酵时,单位TS产气量为400.0mL.g-1,甲烷产量为269.6mL.g-1,相对于玉米秸秆单独厌氧发酵分别提高了20.0%和35.5%,且反应过程中未出现酸化现象。说明蚓粪适合作为玉米秸秆厌氧发酵产气的添加剂。  相似文献   

13.
污泥超声破解效应及厌氧消化性能研究   总被引:6,自引:0,他引:6  
针对超声破解污泥的可行性进行了实验研究,重点考察了超声频率、比能耗、作用时间等因素对破解效应的影响,探讨了破解污泥的厌氧消化性能。结果表明,超声作用的施加可使污泥固体有效破解,污泥细胞内的活性有机物被释放至水相并形成溶解性有机物,表现为SCODCr的显著增加;采用低频、高比能耗及延长作用时间有利于获取高的SCODCr增加值;污泥在频率25kHz、比能耗2.0W/mL、作用时间30min条件下破解,其厌氧消化累计产气量可从破解前的268mL提高到473mL,相应TCODCr去除率、VS去除率分别从39.1%、33.5%提高至54.3%、61.7%。研究结果表明采用超声破解技术提高污泥的厌氧消化性是可行的。  相似文献   

14.
四环素类抗生素和铜复合污染对猪粪厌氧消化的影响   总被引:1,自引:0,他引:1  
兽用抗生素和矿物元素添加剂可起到预防动物疾病、促进动物生长、提高饲料转化率等作用,因此被广泛应用于畜禽养殖业。本研究以猪粪中温厌氧消化为研究目标,采用全自动甲烷潜势测试系统,考察了一定浓度的四环素(TC:30 mg·kg~(-1)dry weight,DW)、土霉素(OTC:50 mg·kg~(-1)DW)和金霉素(CTC:15 mg·kg~(-1)DW)对厌氧累积产甲烷量和日产甲烷速率的影响。结果表明,TC、OTC和CTC对猪粪中温厌氧消化累积产甲烷量和日产甲烷速率均有促进作用(累积产甲烷总量提高比例分别为7.9%、0.4%和5.4%)。另外,采用超高效液相色谱-四极杆串联质谱对猪粪厌氧消化前后样品中四环素类抗生素及其代谢产物进行了分析。结果表明,液相中的四环素类抗生素在猪粪厌氧消化过程中得到了明显的去除,去除率达到90%~100%;而固相中只有金霉素和差向异构金霉素有明显的去除效果,去除率分别为41.69%和41.58%。采用Tessier连续提取法对猪粪厌氧消化前后样品中5种形态的铜包括可交换态、碳酸盐结合态、铁锰氧化结合态、有机物结合态、残渣态进行了分析,结果表明,猪粪厌氧消化后,可交换态、碳酸盐结合态和铁锰结合态的铜浓度比厌氧消化前分别降低了1%~9%、0.1%~3%、12%~19%,而有机态和残渣态的铜浓度却在厌氧消化后分别增加了15%~35%、1%~2%。厌氧消化后,70%~80%的铜都是以有机铜的形态存在。铜逐渐从不稳定态转化为相对稳定的有机态和残渣态铜,因此,厌氧消化过程使铜从可生物利用态转变为不可生物利用态,趋于稳定化。  相似文献   

15.
麦秸与奶牛场废水高固体混合厌氧发酵产甲烷研究   总被引:2,自引:0,他引:2  
在实验室条件下,以麦秸和奶牛场废水为原料,设计麦秸与奶牛场废水质量比1∶4(T1)、1∶3(T2)和1∶2(T3)以及对照(麦秸与水质量比1∶4(T4))4个处理,研究发酵过程中日产气量、甲烷含量、发酵前后麦秸理化特性和结构的变化.结果表明,奶牛场废水与麦秸在中温、高固体条件下,厌氧发酵可以正常进行,且产气期延长2周以上,对甲烷含量的影响不大;厌氧发酵初始TS浓度对系统产气的影响较大,麦秸产气量随TS浓度的增加而降低,以T1的产气效果最好,麦秸TS产气量为0.41 L.g-1,较T4提高了17.14%,平均甲烷含量为48.78%;厌氧发酵后,麦秸半纤维素含量大幅降低,纤维素含量少许降低,降低幅度均为T1>T2>T4>T3,木质素含量稍有增加,各处理间无显著差异(P>0.05);FTIR和XRD的结果表明,厌氧发酵后,麦秸纤维素结晶区的相对含量增加,混合发酵可以促进厌氧微生物对麦秸纤维素结晶区的破坏.将麦秸与奶牛场废水(质量比)1∶4混合发酵产沼气是可行的,且促进了厌氧微生物对麦秸有机物的分解破坏,提高了麦秸产气量.  相似文献   

16.
The effects of γ-irradiation pretreatment on anaerobic digestibility of sewage sludge was investigated in this paper. Parameters like solid components, soluble components, and biogas production of anaerobic digestion experiment for sewage sludge were measured. The values of these parameters were compared before and after γ-irradiation pretreatment. Total solid (TS), volatile solid (VS), suspended solid (SS), volatile suspended solid (VSS), and average floc size of samples decreased after γ-irradiation treatment. Besides, floc size distribution of sewage sludge shifted from 80–100 μm to 0–40 μm after γ-irradiation treatment at the doses from 0 to 30 kGy, which indicated the disintegration of sewage sludge. Moreover, microbe cells of sewage sludge were ruptured by γ-irradiation treatment, which resulted in the release of cytoplasm and increase of soluble chemical oxygen demand (SCOD). Both sludge disintegration and microbe cells rupture enhanced the subsequent anaerobic digestion process, which was demonstrated by the increase of accumulated biogas production. Compared with digesters fed with none irradiated sludge, the accumulated biogas production increased 44, 98, and 178 mL for digesters fed sludge irradiated at 2.48, 6.51, and 11.24 kGy, respectively. The results indicated that γ-irradiation pretreatment could effectively enhance anaerobic digestibility of sewage sludge, and correspondingly, could accelerate hydrolysis process, shorten sludge retention time of sludge anaerobic digestion process.  相似文献   

17.
序批式生物膜法同步除磷脱氮特性研究   总被引:6,自引:0,他引:6  
对淹没序批式生物膜法去除有机物和磷及同步部分脱氮的特性进行了研究。其适合的载体装填密度为30%,水力停留时间为9h,其中厌氧3h,好氧6h,进水COD负荷从0.27kg/(m^3.d)到1.32kg/(m^3.d)均可使除磷率达90%以上,脱氮率达50%-60%。淹没式生物膜法除磷脱氮工艺中的优势菌属为假单胞菌属,其次依顺序为气单胞菌属,芽孢杆菌属,微球菌属,硝化矸菌属,生物膜具有生物量大(MLVSS达5531.7mg/L),脱落污泥含磷量高(达5.67%),沉降性好(SVI为101.7)的特点,污泥产率为0.1996kg干泥/kgCOD。  相似文献   

18.
A low pH, ethanol-type fermentation process was evaluated for wastewater treatment and bio-hydrogen production from acidic beet sugar factory wastewater in a continuous stirred tank reactor (CSTR) with an effective volume of 9.6 L by anaerobic mixed cultures in this present study. After inoculating with aerobic activated sludge and operating at organic loading rate (OLR) of 12 kgCOD?m-3·d-1, HRT of 8h, and temperature of 35°C for 28 days, the CSTR achieved stable ethanol-type fermentation. When OLR was further increased to 18 kgCOD?m-3·d-1 on the 53rd day, ethanol-type fermentation dominant microflora was enhanced. The liquid fermentation products, including volatile fatty acids (VFAs) and ethanol, stabilized at 1493 mg·L-1 in the bioreactor. Effluent pH, oxidation-reduction potential (ORP), and alkalinity ranged at 4.1–4.5, -250–(-290) mV, and 230–260 mgCaCO3?L-1. The specific hydrogen production rate of anaerobic activated sludge was 0.1 L?gMLVSS-1·d-1 and the COD removal efficiency was 45%. The experimental results showed that the CSTR system had good operation stability and microbial activity, which led to high substrate conversion rate and hydrogen production ability.  相似文献   

19.
Overtones of fruit wastes accumulate daily in the city of Chennai, India and there is an urgent need to develop, assess and use ecofriendly methods to dispose them. Presently an attempt has been made to study solid state biomethanation of fruit wastes using a laboratory scale anaerobic digester Fruit wastes containing 3%, 4% and 5% solids were used for experimentation. Daily and cumulative production of biogas produced during the study was recorded. Increase in nitrogen, phosphorus and potassium content in the feed was observed during the digestion. During the study the biogas generation increased with increase in total solids. While the gas generation was 0.006 m3/day/m3 of the reactor volume when the solid content was 3% the corresponding values for 4% and 5% solids were 0.27and 0.35 m3 respectively Varying TS 3% to 4% has no effect on fermentation stability and pH remained between 6.8 and 7.4, but an inhibition of methanogenic bacteria was observed for TS 5%. The overall performance of the reactor was depressed by changing feed concentration from 3% to 5%. Experiments with 4% initial solid contend was ideal for solid-state biomethanation.  相似文献   

20.
During brewery wastewater treatment by a hydrolyzation-food chain reactor (FCR) system, sludge was recycled to the anaerobic segment. With the function of hydrolyzation acidification in the anaerobic segment and the processes of aerobic oxidation and antagonism, predation, interaction and symbiosis among microbes in multilevel oxidation segment, residual sludge could be reduced effectively. The 6-month dynamic experiments show that the average chemical oxygen demand (COD) removal ratio was 92.6% and average sludge production of the aerobic segment was 8.14%, with the COD of the influent at 960–1720 mg/L and hydraulic retention time (HRT) of 12 h. Since the produced sludge could be recycled and hydrolyzed in the anaerobic segment, no excess sludge was produced during the steady running for this system.  相似文献   

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